red fumes
Nitric acid is used to produce sodium nitrate through the reaction between sodium hydroxide and nitric acid.
The reaction between copper and nitric acid is an oxidation-reduction reaction where copper is oxidized to copper(II) ions and nitric acid is reduced to nitrogen oxides such as nitrogen dioxide.
The reaction between ammonia and nitric acid is a neutralization reaction, producing ammonium nitrate and water.
Nitric acid reacts with ammonium hydrate to produce ammonium nitrate (a salt) and water.
The reaction between copper and nitric acid is a redox reaction. The copper is oxidized from its elemental form to copper(II) ions, while the nitric acid is reduced to nitrogen dioxide gas.
Nitric acid is used to produce sodium nitrate through the reaction between sodium hydroxide and nitric acid.
The reaction between copper and nitric acid is an oxidation-reduction reaction where copper is oxidized to copper(II) ions and nitric acid is reduced to nitrogen oxides such as nitrogen dioxide.
The reaction between ammonia and nitric acid is a neutralization reaction, producing ammonium nitrate and water.
Nitric acid reacts with ammonium hydrate to produce ammonium nitrate (a salt) and water.
The acid required to produce lithium nitrate is nitric acid (HNO3). The balanced chemical equation for the reaction between lithium hydroxide and nitric acid to produce lithium nitrate is: 2LiOH + 2HNO3 -> 2LiNO3 + 2H2O.
The reaction between copper and nitric acid is a redox reaction. The copper is oxidized from its elemental form to copper(II) ions, while the nitric acid is reduced to nitrogen dioxide gas.
The reaction of a protein (with aromatic rings) with nitric acid produce the yellow xanthoproteic acid.
The reaction between dilute nitric acid and sodium sulfide will produce hydrogen sulfide gas, sodium nitrate, and water. The balanced chemical equation for this reaction is 2HNO3 + Na2S → 2NaNO3 + H2S.
cheese
Ammonia reacts with nitric acid to form ammonium nitrate. This is a neutralization reaction where ammonia, a weak base, reacts with nitric acid, a strong acid, to produce a salt and water. The reaction is exothermic, releasing heat energy.
When nitric acid reacts with iron, it produces nitric oxide gas, iron(II) nitrate, and water. The reaction is exothermic and may produce heat or gas. It is important to perform this reaction in a well-ventilated area because nitric oxide gas can be toxic.
The balanced chemical equation for the reaction between ammonia (NH3) and nitric acid (HNO3) is: NH3 + HNO3 → NH4NO3